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The SAP-C02 Exam covers a wide range of topics, including designing and deploying scalable, highly available, and fault-tolerant systems, selecting appropriate AWS services for a given scenario, migrating complex multi-tier applications on AWS, designing and deploying secure and compliant applications and infrastructures, and troubleshooting common issues with AWS deployments.

The AWS Certified Solutions Architect - Professional (SAP-C02) certification is a valuable credential for IT professionals who want to demonstrate their expertise in designing and deploying complex AWS solutions. AWS Certified Solutions Architect - Professional (SAP-C02) certification helps candidates to enhance their career prospects and opens up new opportunities for job roles such as AWS Solutions Architect, Cloud Architect, and Cloud Engineer. Additionally, the certification validates the candidate's knowledge and skills in advanced AWS services, which can benefit their current employer by improving the organization's efficiency and reducing costs.

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Amazon AWS Certified Solutions Architect - Professional (SAP-C02) Sample Questions (Q358-Q363):

NEW QUESTION # 358
A global media company is planning a multi-Region deployment of an application. Amazon DynamoDB global tables will back the deployment to keep the user experience consistent across the two continents where users are concentrated. Each deployment will have a public Application Load Balancer (ALB). The company manages public DNS internally. The company wants to make the application available through an apex domain.
Which solution will meet these requirements with the LEAST effort?

  • A. Create an AWS Global Accelerator accelerator with multiple endpoint groups that target endpoints in appropriate AWS Regions. Use the accelerator's static IP address to create a record in public DNS for the apex domain.
  • B. Create an Amazon API Gateway API that is backed by AWS Lambda in one of the AWS Regions. Configure a Lambda function to route traffic to application deployments by using the round robin method. Create CNAME records for the apex domain to point to the API's URL.
  • C. Place a Network Load Balancer (NLB) in front of the ALB. Migrate public DNS to Amazon Route 53. Create a CNAME record for the apex domain to point to the NLB's static IP address. Use a geolocation routing policy to route traffic based on user location.
  • D. Migrate public DNS to Amazon Route 53. Create CNAME records for the apex domain to point to the ALB. Use a geolocation routing policy to route traffic based on user location.

Answer: A


NEW QUESTION # 359
A company has an organization that has many AWS accounts in AWS Organizations. A solutions architect must improve how the company manages common security group rules for the AWS accounts in the organization.
The company has a common set of IP CIDR ranges in an allow list in each AWS account to allow access to and from the company's on-premises network.
Developers within each account are responsible for adding new IP CIDR ranges to their security groups. The security team has its own AWS account. Currently, the security team notifies the owners of the other AWS accounts when changes are made to the allow list.
The solutions architect must design a solution that distributes the common set of CIDR ranges across all accounts.
Which solution meets these requirements with the LEAST amount of operational overhead?

  • A. Create a new customer-managed prefix list in the security team's AWS account. Populate the customer-managed prefix list with all internal CIDR ranges. Share the customer-managed prefix list with the organization by using AWS Resource Access Manager. Notify the owner of each AWS account to allow the new customer-managed prefix list ID in their security groups.
  • B. Set up an Amazon Simple Notification Service (Amazon SNS) topic in the security team's AWS account. Deploy an AWS Lambda function in each AWS account. Configure the Lambda function to run every time an SNS topic receives a message. Configure the Lambda function to take an IP address as input and add it to a list of security groups in the account. Instruct the security team to distribute changes by publishing messages to its SNS topic.
  • C. Create new customer-managed prefix lists in each AWS account within the organization. Populate the prefix lists in each account with all internal CIDR ranges. Notify the owner of each AWS account to allow the new customer-managed prefix list IDs in their accounts in their security groups. Instruct the security team to share updates with each AWS account owner.
  • D. Create an IAM role in each account in the organization. Grant permissions to update security groups.
    Deploy an AWS Lambda function in the security team's AWS account. Configure the Lambda function to take a list of internal IP addresses as input, assume a role in each organization account, and add the list of IP addresses to the security groups in each account.

Answer: A

Explanation:
Create a new customer-managed prefix list in the security team's AWS account. Populate the customer-managed prefix list with all internal CIDR ranges. Share the customer-managed prefix list with the organization by using AWS Resource Access Manager. Notify the owner of each AWS account to allow the new customer-managed prefix list ID in their security groups. This solution meets the requirements with the least amount of operational overhead as it requires the security team to create and maintain a single customer-managed prefix list, and share it with the organization using AWS Resource Access Manager. The owners of each AWS account are then responsible for allowing the prefix list in their security groups, which eliminates the need for the security team to manually notify each account owner when changes are made. This solution also eliminates the need for a separate AWS Lambda function in each account, reducing the overall complexity of the solution.


NEW QUESTION # 360
A company has many AWS accounts and uses AWS Organizations to manage all of them. A solutions architect must implement a solution that the company can use to share a common network across multiple accounts.
The company's infrastructure team has a dedicated infrastructure account that has a VPC. The infrastructure team must use this account to manage the network. Individual accounts cannot have the ability to manage their own networks. However, individual accounts must be able to create AWS resources within subnets.
Which combination of actions should the solutions architect perform to meet these requirements? (Select TWO.)

  • A. Create a resource share in AWS Resource Access Manager in the infrastructure account. Select the specific AWS Organizations OU that will use the shared network. Select each subnet to associate with the resource share.
  • B. Create a resource share in AWS Resource Access Manager in the infrastructure account. Select the specific AWS Organizations OU that will use the shared network. Select each prefix list to associate with the resource share.
  • C. Create a transit gateway in the infrastructure account.
  • D. Enable resource sharing from the AWS Organizations management account.
  • E. Create VPCs in each AWS account within the organization in AWS Organizations. Configure the VPCs to share the same CIDR range and subnets as the VPC in the infrastructure account. Peer the VPCs in each individual account with the VPC in the infrastructure account,

Answer: B,C

Explanation:
Explanation
https://docs.aws.amazon.com/vpc/latest/userguide/sharing-managed-prefix-lists.html


NEW QUESTION # 361
A company is deploying a distributed in-memory database on a fleet of Amazon EC2 instances. The fleet consists of a primary node and eight worker nodes. The primary node is responsible for monitoring cluster health, accepting user requests, distributing user requests to worker nodes and sending an aggregate response back to a client. Worker nodes communicate with each other to replicate data partitions.
The company requires the lowest possible networking latency to achieve maximum performance.
Which solution will meet these requirements?

  • A. Launch memory optimized EC2 instances in a cluster placement group
  • B. Launch compute optimized EC2 instances in a partition placement group
  • C. Launch memory optimized EC2 instances in a partition placement group
  • D. Launch compute optimized EC2 instances in a spread placement group.

Answer: A

Explanation:
According to the AWS Certified Solutions Architect - Professional Official Amazon Text Book, a cluster placement group is a logical grouping of instances within a single Availability Zone. It is recommended for applications that need low network latency, high network throughput, or both. Network latency and throughput are improved because instances within the same placement group can communicate directly with each other over a high-speed, low-latency network connection. Memory-optimized instances are ideal for in-memory databases as they are optimized for high performance and low latency.


NEW QUESTION # 362
A company is using multiple AWS accounts The DNS records are stored in a private hosted zone for Amazon Route 53 in Account A The company's applications and databases are running in Account B.
A solutions architect win deploy a two-net application In a new VPC To simplify the configuration, the db.example com CNAME record set tor the Amazon RDS endpoint was created in a private hosted zone for Amazon Route 53.
During deployment, the application failed to start. Troubleshooting revealed that db.example com is not resolvable on the Amazon EC2 instance The solutions architect confirmed that the record set was created correctly in Route 53.
Which combination of steps should the solutions architect take to resolve this issue? (Select TWO )

  • A. Use SSH to connect to the application tier EC2 instance Add an RDS endpoint IP address to the /eto/resolv.conf file
  • B. Create a private hosted zone for the example.com domain m Account B Configure Route 53 replication between AWS accounts
  • C. Deploy the database on a separate EC2 instance in the new VPC Create a record set for the instance's private IP in the private hosted zone
  • D. Associate a new VPC in Account B with a hosted zone in Account A. Delete the association authorization In Account A.
  • E. Create an authorization lo associate the private hosted zone in Account A with the new VPC In Account B

Answer: D,E

Explanation:
Explanation
https://aws.amazon.com/premiumsupport/knowledge-center/private-hosted-zone-different-account/


NEW QUESTION # 363
......

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